[0001] This invention describes a device which combines the truing and dressing operations
to refinish the surface of a peripheral grinding wheel of a cylindrical grinding machine
with precise parallel tolerances when the grinder utilizes a Cubic Boron Nitride (CBN)
grinding wheel.
[0002] Previous art has required either sequentially dressing and truing or, where combined,
employing complex apparatus to drive dressing and truing wheels each operating at
different speeds relative to the grinding wheel.
[0003] It is evident that it would be desirable to carry out both operations in a single
step while at the same time performing the operations with simple, economic equipment.
[0004] It is an object of the invention to provide a cylindrical grinding machine truing
and dressing device which is capable of performing both operations in a single step.
[0005] From one aspect, the invention provides a cylindrical grinding machine truing and
dressing device for refinishing the surface of a peripheral grinding wheel of a cylindrical
grinder, characterized by
[0006] a support base attached or attachable to the work bed of a cylindrical grinding machine
and selectively displaceable in a direction parallel to the axis of the grinding wheel,
housing means mounted to said base having truing tool means,
means for rotatably supporting the truing tool means,
dressing bar and abrasive block means,
means for slidably housing said dressing bar and abrasive block means,
motor drive means for rotatively driving said truing tool means,
stepping motor means for axially displacing said dressing bar and abrasive block means,
and
worm gear means for translating said stepping motor rotation into dressing bar axial
displacement,
[0007] said axial displacement being precisely controlled to forcefully engage the grinding
wheel before, during and after a truing operation.
[0008] The truing and dressing device embodying the present invention provides for dressing
the grinding wheel to restore its geometric configuration to the original shape, truing
for sharpening the wheel and a final dressing to remove any glazing and to remove
a small layer of matrix bond to expose sharp particles of the CBN grinding wheel all
in a single step. The dressing bar has an abrasive block which is used in combination
with a rotary diamond truing tool to obtain precise parallel tolerances of the surface
finish of the grinding wheel.
[0009] The device embodying the invention is capable of utilizing simple, economic and easily
replaced abrasive blocks for dressing, and is capable of continuously and accurately
advancing the abrasive block throughout the dressing operation.
[0010] From another aspect, the invention provides a dressing bar assembly for a cylindrical
grinding machine comprising
a base including a bore,
a sleeve member matingly inserted into said base bore, said sleeve member being axially
truncated and having an axially extending slot opening along the truncated surface,
means for securing said sleeve member at a predetermined axial and radial location,
an abrasive block located within said'slot and projecting beyond said slot opening,
retainer means located within said sleeve member within said base bore and including
an abrasive block-engaging surface,
means for maintaining said retaining means at a predetermined axial location within
said bore,
means for forcefully urging said retainer means against the axially exposed portion
of said abrasive block to frictionally hold said abrasive block in its axial position,
means for retracting said retainer to free said abrasive block, and
means for overcoming said frictional engagement and axially advancing said abrasive
block.
[0011] In order that the invention may be more readily understood, reference will now be
made to the accompanying drawings, in which:-
Figure 1 is a side view of a grinding machine truing and dressing device embodying
the invention;
Figure 2 is a front view of the truing and dressing device shown in Figure 1;
Figure 3 is a section view of the dresser portion of the truing and dressing device
shown in Figure 1; and
Figure 4 is a sectional view of the abrasive block and sleeve taken along lines 4-4
of Figure 1.
[0012] Referring to Figures 1 and 2, a cylindrical grinding machine 10 includes a bed 11
slidably supporting a work table 12. A workpiece 13 is supported between a headstock
(not shown) and a footstock 14 which are secured to the work table 12. A grinding
wheel 15 is rotatably mounted on a wheelhead support member (not shown) that is advanced
in accordance with a predetermined infeed program to effect a grinding operation on
one or a plurality of workpiece portions 16.
[0013] The grinding wheel 15 is composed of abrasive grain particles of hard material such
as Cubic Boron Nitride (CBN) that are bonded to the wheel with resins or other bond
or matrix material. The grinding wheel is advanced after the work table 12 is indexed
axially to the workpiece portions 16.
[0014] A dressing and truing assembly -20 carried by the work table 12 is provided to restore
the peripheral surface of the grinding wheel 15 to a precise parallel relationship
to the workpiece axis. The dressing and truing mechanism 20 includes a rotary truing
tool 22 having impregnated diamonds to provide a continuous truing action when the
truing tool 22 is rotated. The truing tool 22 is formed on a hardened steel mandrel
23 which is rotatably supported in spaced bearings 24 and 25 and secured to the base
26 by a cap member 27. The bearings 24 and 25 are mounted and sealed within the bore
28 of the dresser base 26 to prevent contamination from coolant 'and air-borne particles.
[0015] The dresser base 26 is secured to the work table 12 and is longitudinally positioned
in axial alignment with the grinding wheel 15 prior to a dressing operation. The rotary
truing tool 22 is driven by an electric motor 30 which is coupled to the mandrel 23
by a timing belt 31 which connects the motor sprocket 32 that is keyed to the motor
shaft 33 and the spindle sprocket 34 that is secured to the mandrel 23.
[0016] As best seen in Figures 1 and 3, the dresser base 26 also houses a dressing bar 35.
The dressing bar 35 displaces an abrasive block 36 which is advanced to tangentially
engage the periphery of the grinding wheel 15 under high pressure by a drive mechanism.
The drive mechanism includes an electronic stepping motor 40 secured to the dresser
base 26. The stepping motor 40 includes a shaft 41 which is coupled to a worm member
42 which is rotatably supported in spaced bearings 43 and 44.
[0017] The worm member 42 is in mesh with a worm gear 45 which is in threaded engagement
with thread teeth 46 of the dressing bar 35. Pin 47 slidably engages keyway slot 48
of dressing bar 35 thereby preventing rotation of the dressing bar as the gear 45
acts to advance the dressing bar. The stepping motor drive mechanism provides increments
of feed as small as approximately 0.013 mm. (0.0005 of an inch) to effect advancement
of the dressing bar 35 to force the abrasive block 36 into the CBN grinding wheel
15 during a dressing operation.
[0018] The abrasive block 36 is retained in a sleeve member 50 which is secured to the dresser
base 26 by bolts 51 and 52. The abrasive block 36 which is freely slidable in a three-sided
channel of the sleeve member is maintained within the slot by compression springs
53 and 54 which act on a retainer 55 to forcefully urge the retainer 55 against the
free side of the abrasive block. This frictional force can be overcome by the selective
advancement of the dressing bar 53. The abrasive block 36 can be easily replaced by
advancing a bolt 56, thereby withdrawing retainer 55, as seen in Figure 4, compressing
springs 53 and 54 and releasing the block. The abrasive block which is subject to
wear can thereby be easily replaced whenever excessive wear occurs.
[0019] The dressing and truing operations are simultaneously affected after a predetermined
number of workpieces 13 have been ground. The dressing and truing operation is performed
with the machine in a manual operating mode. The operator will traverse the work table
12 to align the dressing and truing assembly 20 with the grinding wheel 15. The wheelhead
support member is advanced until the grinding wheel 15, which is rotating, is close
to the truing tool 22. The dresser motor 30 is started and the truing tool
22 is rotated. The CBN dress cycle is started and the grinding wheel is advanced in
increments of approximately 0.013 mm. (0.0005 inch). The dressing bar 35 is advanced
approximately 0.635 mm (0.250") by the stepping motor 40 and the abrasive block 36
contacts the periphery of the CBN grinding wheel 15 to effect the dressing operation
under high pressure. The rotary truing tool 22 penetrates the CBN grinding wheel 15
to effect the truing operation while the wheel is being dressed by the abrasive block
36. A fine layer of dull boron and matrix or bond will be removed. The abrasive block
will also remove a shallow layer of the
- matrix or bond beyond the outer edge of the CBN grinding wheel 15. The cutting surface
of the CBN grinding wheel 15 will be parallel to the axis of the workpiece 13.
[0020] The dressing bar 35 can also be advanced independently to remove any glazing from
the CBN grinding wheel 15 when a normal truing and dressing cycle is not required.
[0021] Though the above describes and illustrates a dressing block 36 and sleeve member
50 whose long axes are disposed horizontally, it is obvious that the dresser could
be constructed so as to orient them vertically if desired.
1. A cylindrical grinding machine truing and dressing device for refinishing the surface
of a peripheral grinding wheel of a cylindrical grinder, characterized by
a support base (12) attached or attachable to the work bed (11) of a cylindrical grinding
machine and selectively displaceable in a direction parallel to the axis of the grinding
wheel,
housing means (26) mounted to said base having truing tool means (15),
means (24, 25) for rotatably supporting the truing tool means,
dressing bar and abrasive block means (36),
means (50) for slidably housing said dressing bar and abrasive block means (36),
motor drive means (30) for rotatively driving said truing tool means,
stepping motor means (40) for axially displacing said dressing bar and abrasive block
means, and
worm gear means (41, 42, 45, 46) for translating said stepping motor rotation into
dressing bar axial displacement,
said axial displacement being precisely controlled to forcefully engage the grinding
wheel before, during and after a truing operation.
2. A truing and dressing device according to claim 1, wherein said means for slidably
housing said dressing bar and abrasive block includes
sleeve means (50) for housing said abrasive block means, and
spring (53, 54) biased retainer means (55) for securing said abrasive block means
to said sleeve means in a manner facilitating removal.
3. A truing and dressing device according to claim 1 or 2, wherein the motor drive
means (30) drives the truing tool means (15) via a timing belt (31).
4. A dressing bar assembly for a cylindrical grinding machine comprising
a base (26) including a bore,
a sleeve member (50) matingly inserted into said base bore, said sleeve member being
axially truncated and having an axially extending slot opening along the truncated
surface, -
means (51) for securing said sleeve member (50) at a predetermined axial and radial
location,
an abrasive block (36) located within said slot and projecting beyond said slot opening,
retainer means (55) located within said sleeve member (50) within said base bore and
including an abrasive block-engaging surface,
means (56) for maintaining said retaining means at a predetermined axial location
within said bore,
means (53, 54) for forcefully urging said retainer means against the axially exposed
portion of said abrasive block to frictionally hold said abrasive block in its axial
position,
means (56) for retracting said retainer to free said abrasive block, and
means (40) for overcoming said frictional engagement and axially advancing said abrasive
block.